Hemodynamics, cerebral circulation, and oxygen saturation in Cheyne-Stokes respiration

被引:76
作者
Franklin, KA
Sandstrom, E
Johansson, G
Balfors, EM
机构
[1] UMEA UNIV HOSP, DEPT THORAC SURG, S-90185 UMEA, SWEDEN
[2] UMEA UNIV HOSP, DEPT ANESTHESIA & CRIT CARE MED, S-90185 UMEA, SWEDEN
关键词
ultrasonography; Doppler; transcranial; blood pressure; transcutaneous blood-gas monitoring; cerebrovascular circulation;
D O I
10.1152/jappl.1997.83.4.1184
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Because cardiovascular disorders and stroke may induce Cheyne-Stokes respiration, our purpose was to study the interaction among cerebral activity, cerebral circulation, blood pressure, and blood gases during Cheyne-Stokes respiration. Ten patients with heart failure or a previous stroke were investigated during Cheyne-Stokes respiration with recordings of daytime polysomnography, cerebral blood flow velocity, intra-arterial blood pressure, and intra-arterial oxygen saturation with and without oxygen administration. There were simultaneous changes in wakefulness, cerebral blood flow velocity, and respiration with accompanying changes in blood pressure and heart rate similar to 10 s later. Cerebral blood flow velocity, blood pressure, and heart rate had a minimum occurrence in apnea and a maximum occurrence during hyperpnea. The apnea-induced oxygen desaturations were diminished during oxygen administration, but the hemodynamic alterations persisted. Oxygen desaturations were more severe and occurred earlier according to intraarterial measurements than with finger oximetry. It is not possible to explain Cheyne-Stokes respiration by alterations in blood gases and circulatory time alone. Cheyne-Stokes respiration may be characterized as a state of phase-linked cyclic changes in cerebral, respiratory, and cardiovascular functions probably generated by variations in central nervous activity.
引用
收藏
页码:1184 / 1191
页数:8
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